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THE EFFECT OF MRET NOISE FIELD GENERATOR ON METABOLIC ACTIVITY OF ASTROCYTE CELLS EXPOSED TO RF RADIATION

机译:矿物噪声场发生器对暴露于射频辐射的星形胶质细胞代谢活性的影响

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This article is related to the experimental data revealing the ability of MRET noise field generator (NFG) to compensate the inhibition of Astrocyte cells metabolic activity when Astrocytes arc exposed to RF radiation. Astrocyte samples exposed to RF (mobile phone) radiation were placed at the distance of 30 feet from NFG in this experiment. The core part of the generator is MRET polymer compound. Due to the fractal geometry structure of MRET polymer compound and the phenomenon of piezoelectricity, this polymer generates subtle, low frequency, non-coherent electromagnetic oscillations (composite noise field) when exposed to electromagnetic field of 7.8 Hz and 14.5 Hz frequency oscillating in a repeating sequence for 5 seconds each time. MRET polymer compound is driven by the solenoid that encapsulates this polymer material. The composite noise field can modify RF signals as a result of superposition phenomenon. The superposition of composite noise field generated by MRET generator on RF microwave signals leads to amplitude modulation of RF signals where random low frequency signal generated by MRET generator is a modulating signal and original microwave signal is a modulated one. Litovitz et al. proposed that living cells exist in an electrically noisy environment and these endogenous thermal noise fields are larger than those exogenous EMFs reported to cause effects. They suggested that only the EMFs that are temporally and spatially coherent such as radiofrequency fields could affect living cells while endogenous thermal noise fields, which cells do not respond to, were temporally and spatially incoherent. A number of observations have supported this theory. In one experiment, the cellular effects induced by acute microwave radiation were mitigated by superposing with electromagnetic noise in vitro. DNA damage induced by 1.8 GHz microwave radiation at the SAR of 3 W/kg and 4 W/kg was significantly higher than sham exposure (p¡0.001) whereas no significant differences could be observed in other exposure groups compared with the sham exposure group (p¿0.05). Electromagnetic noise alone did not increase DNA damage of HLEC, and when it was superposed on the radiofrequency field, the electromagnetic noise could block RF-induced DNA damage. To verify the compensatory effect of amplitude modulated signals on metabolic activity of living cells exposed to RF radiation the experiment was conducted at Molecular Diagnostic Services Inc., San Diego on normal human brain Astrocyte cell. The same approach and technology can be adopted to develop MRET generator that can protect humans against ionizing space radiation.
机译:本文与实验数据相关,该数据揭示了当星形胶质细胞暴露于RF辐射时,MRET噪声场发生器(NFG)能够补偿对星形胶质细胞代谢活性的抑制。在此实验中,将暴露于RF(移动电话)辐射的星形胶质细胞样品放置在距NFG 30英尺的位置。发生器的核心部分是MRET高分子化合物。由于MRET聚合物化合物的分形几何结构和压电现象,当该聚合物暴露于7.8 Hz和14.5 Hz重复频率振荡的电磁场中时,会产生微妙的低频非相干电磁振荡(复合噪声场)每次5秒钟。 MRET高分子化合物由包裹该高分子材料的螺线管驱动。由于叠加现象,复合噪声场可以修改RF信号。由MRET发生器产生的复合噪声场在RF微波信号上的叠加导致RF信号的幅度调制,其中MRET发生器产生的随机低频信号是调制信号,而原始微波信号是已调制信号。 Litovitz等。提出活细胞存在于电噪声环境中,并且这些内源性热噪声场大于据报道会引起影响的外源性EMF。他们建议,只有在时间和空间上相干的EMF(例如射频场)才能影响活细胞,而细胞不响应的内源性热噪声场在时间和空间上是不相干的。许多观察结果支持了这一理论。在一个实验中,急性微波辐射诱导的细胞效应通过在体外与电磁噪声叠加而得以缓解。在SAR分别为3 W / kg和4 W / kg时,1.8 GHz微波辐射引起的DNA损伤显着高于假接触(p 0.001),而与假接触组相比,其他暴露组均未观察到显着差异( p?0.05)。单独的电磁噪声并不会增加HLEC的DNA损伤,当电磁噪声叠加在射频场上时,电磁噪声会阻止RF诱导的DNA损伤。为了验证调幅信号对暴露于RF辐射的活细胞的代谢活性的补偿作用,该实验在圣地亚哥的分子诊断服务公司(Molecular Diagnostic Services Inc.,San Diego)对正常人脑星形胶质细胞进行。可以采用相同的方法和技术来开发MRET发生器,该发生器可以保护人类免受电离空间辐射的伤害。

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